Department of Physics & Physical Oceanography, Memorial University of Newfoundland St. John's, Newfoundland and Labrador, Canada.
PLoS One. 2013 Aug 26;8(8):e72248. doi: 10.1371/journal.pone.0072248. eCollection 2013.
The hydrophobic lung surfactant SP-B is essential for respiration. SP-B promotes spreading and adsorption of surfactant at the alveolar air-water interface and may facilitate connections between the surface layer and underlying lamellar reservoirs of surfactant material. SP-B63-78 is a cationic and amphipathic helical peptide containing the C-terminal helix of SP-B. (2)H NMR has been used to examine the effect of SP-B63-78 on the phase behavior and dynamics of bicellar lipid dispersions containing the longer chain phospholipids DMPC-d 54 and DMPG and the shorter chain lipid DHPC mixed with a 3∶1∶1 molar ratio. Below the gel-to-liquid crystal phase transition temperature of the longer chain components, bicellar mixtures form small, rapidly reorienting disk-like particles with shorter chain lipid components predominantly found around the highly curved particle edges. With increasing temperature, the particles coalesce into larger magnetically-oriented structures and then into more extended lamellar phases. The susceptibility of bicellar particles to coalescence and large scale reorganization makes them an interesting platform in which to study peptide-induced interactions between lipid assemblies. SP-B63-78 is found to lower the temperature at which the orientable phase transforms to the more extended lamellar phase. The peptide also changes the spectrum of motions contributing to quadrupole echo decay in the lamellar phase. The way in which the peptide alters interactions between bilayered micelle structures may provide some insight into some aspects of the role of full-length SP-B in maintaining a functional surfactant layer in lungs.
疏水性肺表面活性剂 SP-B 对于呼吸至关重要。SP-B 促进表面活性剂在肺泡气-水界面的铺展和吸附,并可能促进表面层与富含表面活性剂物质的层状储库之间的连接。SP-B63-78 是一种带正电荷的两亲性螺旋肽,含有 SP-B 的 C 端螺旋。(2)H NMR 已被用于研究 SP-B63-78 对含有较长链磷脂 DMPC-d54 和 DMPG 以及较短链脂质 DHPC 的双体脂质分散体的相行为和动力学的影响,DHPC 与双体脂质以 3∶1∶1 的摩尔比混合。在较长链成分的凝胶到液晶相转变温度以下,双体混合物形成小的、快速重定向的盘状颗粒,较短链脂质成分主要分布在高度弯曲的颗粒边缘周围。随着温度的升高,颗粒聚合并形成更大的磁性定向结构,然后形成更扩展的层状相。双体颗粒易于聚合并进行大规模重组,这使它们成为研究肽诱导脂质组装之间相互作用的有趣平台。SP-B63-78 被发现降低了可取向相转变为更扩展层状相的温度。该肽还改变了在层状相中对四极子回波衰减有贡献的运动谱。肽改变双层胶束结构之间相互作用的方式可能为全长 SP-B 在维持肺部功能性表面活性剂层中的作用的某些方面提供一些见解。